关于哺乳动物昼夜节律的分子和神经基础的不断发展的观点
Yanqin Liu1, Ran Huo2, Eric E Zhang2
1National Institute of Biological Sciences, Beijing 102206, China; Peking University-Tsinghua University-National Institute of Biological Sciences (PTN) Joint Graduate Program and School of Life Sciences, Tsinghua University, Beijing 100084, China.
Trends in neurosciences
|October 10, 2025
概括
本综述探讨了哺乳动物多层次的昼夜调节,重点关注转录-翻译反循环 (TTFL) 和上神核 (SCN) 节律器. 它突出了RUVBL2的亮点.
科学领域:
- 时间生物学和分子生物学.
- 神经科学和系统生物学
- 哺乳动物生理学 哺乳动物生理学
背景情况:
- 循环节律对于适应日常环境变化至关重要.
- 转录-翻译反循环 (TTFL) 是一个核心机制,但它的局限性正在被揭露.
- 一个古老的时钟组件RUVBL2提出了普遍的计时原则.
研究的目的:
- 为哺乳动物昼夜节律生成提供最新的视角.
- 整合分子,神经和电路层面的机制.
- 强调上神核 (SCN) 作为中央起器的作用.
主要方法:
- 关于昼夜时钟机制的最新文献的审查.
- 分子组件的分析,包括TTFL和RUVBL2.
- 检查SCN内的细胞间合和神经网络特性.
主要成果:
- 循环节律是层次的,涉及TTFL和保存元素,如RUVBL2.
- 细胞间合在SCN中产生强大的节奏在代谢和电活动.
- 该SCN集成外部线索来协调系统生理学.
结论:
- 哺乳动物的昼夜节律源于集成的分子,神经和电路层次的过程.
- 该SCN作为日常生理调整的中央协调员.
- 了解这些机制对于解决与昼夜干扰有关的疾病至关重要.
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